TOUCH PANEL AND METHOD OF MANUFACTURING A TOUCH PANEL
    23.
    发明申请
    TOUCH PANEL AND METHOD OF MANUFACTURING A TOUCH PANEL 有权
    触控面板和制造触控面板的方法

    公开(公告)号:US20120249441A1

    公开(公告)日:2012-10-04

    申请号:US13311556

    申请日:2011-12-06

    IPC分类号: G06F3/041 B05D5/00

    CPC分类号: G06F3/044 G06F2203/04103

    摘要: The present invention discloses a touch panel and a method of manufacturing a touch panel, to reduce the visibility of the transparent etching line of the transparent electrodes on the touch panel. The touch panel comprises a plurality of transparent electrode disposed distantly on the transparent conductive layer and the passivation layer of a transparent substrate, where the passivation layer covering the transparent conductive layer, to make the refractive index of the passivation layer and the transparent electrodes match with each other. Oxide with high refractive index added in the passivation material is filled in the etched area of the transparent conductive layer, so that the optical refractive index of the etched area and ITO area on transparent conductive layer become closer, and the difference in refractive index curve between ITO area and etched area is reduced, therefore, the effect of making the transparent electrode pattern is achieved.

    摘要翻译: 本发明公开了触摸面板和制造触摸面板的方法,以降低触摸面板上的透明电极的透明蚀刻线的可视性。 触摸面板包括多个透明电极,其设置在透明导电层上的透明电极和透明衬底的钝化层,其中钝化层覆盖透明导电层,以使钝化层和透明电极的折射率与 彼此。 在钝化材料中加入高折射率的氧化物被填充在透明导电层的蚀刻区域中,使得透明导电层上的蚀刻区域和ITO区域的光学折射率变得更接近,并且折射率之间的折射率差 ITO区域和蚀刻面积减少,因此,实现了形成透明电极图案的效果。

    Broad spectrum anti-viral therapeutics and prophylaxis
    26.
    发明申请
    Broad spectrum anti-viral therapeutics and prophylaxis 有权
    广谱抗病毒治疗和预防

    公开(公告)号:US20050004020A1

    公开(公告)日:2005-01-06

    申请号:US10718986

    申请日:2003-11-21

    申请人: Mang Yu Fang Fang

    发明人: Mang Yu Fang Fang

    CPC分类号: B82Y5/00 A61K38/47 A61K38/57

    摘要: The present invention provides new compositions and methods for preventing and treating pathogen infection. In particular, the present invention provides compounds having an anchoring domain that anchors the compound to the surface of a target cell, and a therapeutic domain that can act extracellularly to prevent infection of the target cell by a pathogen, such as a virus. Preferred target cells are epithelial cells. The invention provides compositions and methods for preventing viral diseases, such as influenza, using compounds having anchoring domains that can bind target cells linked to enzymatic activities that can act extracellularly to interfere with viral infection of target cells. The invention also provides compositions and methods for preventing viral diseases such as influenza using compounds having anchoring domains that can bind target cells linked to protease inhibitors that can act extracellularly to interfere with viral infection of target cells.

    摘要翻译: 本发明提供了用于预防和治疗病原体感染的新的组合物和方法。 特别地,本发明提供具有将化合物锚定在靶细胞表面的锚定结构域的化合物,以及可以在细胞外作用以防止病原体如病毒感染靶细胞的治疗结构域。 优选的靶细胞是上皮细胞。 本发明提供了用于预防病毒性疾病(例如流行性感冒)的组合物和方法,使用具有锚定结构域的化合物,所述化合物具有可结合与细胞外作用以干扰靶细胞的病毒感染的酶活性连接的靶细胞。 本发明还提供了用于使用具有锚定结构域的化合物来预防病毒性疾病例如流感的组合物和方法,所述化合物具有可以结合与蛋白酶抑制剂连接的靶细胞,其可以在细胞外作用以干扰靶细胞的病毒感染。

    Zinc oxide nanostructures and sensors using zinc oxide nanostructures
    30.
    发明授权
    Zinc oxide nanostructures and sensors using zinc oxide nanostructures 有权
    氧化锌纳米结构和传感器使用氧化锌纳米结构

    公开(公告)号:US09309128B2

    公开(公告)日:2016-04-12

    申请号:US13264225

    申请日:2010-04-14

    摘要: A method for preparing zinc oxide nanostructures using arc discharge is disclosed. The method comprises the provision of an anode and a cathode in an arc discharge chamber. Current is supplied to the anode and the cathode to establish an arc discharge between the cathode and the anode to vaporize the anode and produce zinc oxide nanostructures. Contemplated is the use of the zinc oxide nanostructures to produce components that have applications in, for example, optoelectronics, energy storage devices, field emission devices, and sensors such as UV photosensors, gas sensors and humidity sensors. Disclosed is a gas sensor and method for its production, where said method comprises the provision of a sensor substrate comprising a conducting thin film at least partially covering at least two regions on at least one surface of a sensor substrate material to define a gap in the conducting thin film, the application of a mixture of zinc oxide nanostructures and a non-ionic polymer to at least a portion of the gap in the conducting thin film to thereby bridge the gap. Optionally contemplated is a step of annealing the mixture of zinc oxide nanostructures and non-ionic polymer applied to said sensor substrate to produce the sensor component.

    摘要翻译: 公开了一种使用电弧放电制备氧化锌纳米结构的方法。 该方法包括在电弧放电室中提供阳极和阴极。 电流被提供给阳极和阴极,以在阴极和阳极之间建立电弧放电,以蒸发阳极并产生氧化锌纳米结构。 考虑使用氧化锌纳米结构来生产在例如光电子学,能量存储器件,场致发射器件以及诸如UV光电传感器,气体传感器和湿度传感器的传感器中应用的部件。 公开了一种用于其生产的气体传感器和方法,其中所述方法包括提供传感器基底,其包括导电薄膜,至少部分地覆盖传感器基底材料的至少一个表面上的至少两个区域,以在 导电薄膜,将氧化锌纳米结构和非离子聚合物的混合物施加到导电薄膜中的间隙的至少一部分,从而桥接间隙。 可以预期的是退火施加到所述传感器基底上的氧化锌纳米结构和非离子聚合物的混合物以产生传感器部件的步骤。